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Optimization of a membrane hybrid process for oil-in-water emulsions treatment using Taguchi experimental design

机译:使用Taguchi实验设计优化水包油乳液膜混合工艺的工艺

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A coagulation-centrifugation/ultrafiltration hybrid process has been performed for the treatment of a commercial oil-in-water emulsion used in metalworking operations. The effect of pre-treatment stage on membrane fouling was evaluated to ascertain the main fouling mechanism and to establish the best membrane cleaning procedure. The hybrid process was optimized in terms of the maximum ultrafiltration (UF) permeate flux. Destabilization temperature, transmembrane pressure, feed flow rate to the UF module, and coagulant salt molar concentration were selected as factors. The experiments were designed using Taguchi method, and the contribution of each factor was determined using a statistical analysis of variance. Experimental results were also discussed in terms of environmental parameters (chemical oxygen demand [COD], conductivity, pH, and turbidity) for the main process streams. The best fit to experimental data of permeate flux decline corresponded to the cake/gel layer formation model. The cleaning procedure combined alkaline and acid washings with mechanical cleaning of membrane surface, and through this combination total permeate flux recovery was achieved. Temperature was the most significant factor affecting permeate flux, followed by coagulant salt concentration, with COD reductions higher than 97.5% for all experimental conditions tested.
机译:已经进行了凝结-离心/超滤混合工艺来处理用于金属加工操作中的商业水包油乳液。评估预处理阶段对膜污染的影响,以确定主要的污染机理并建立最佳的膜清洁程序。就最大超滤(UF)渗透通量而言,优化了混合工艺。选择去稳定温度,跨膜压力,超滤组件的进料流速和凝结剂盐的摩尔浓度作为因素。使用田口方法设计实验,并使用方差统计分析确定每个因素的贡献。还针对主要工艺流的环境参数(化学需氧量[COD],电导率,pH和浊度)讨论了实验结果。渗透通量下降的实验数据的最佳拟合对应于滤饼/凝胶层形成模型。清洗程序将碱洗和酸洗与膜表面的机械清洗结合在一起,并通过这种结合实现了总渗透通量的回收。温度是影响渗透通量的最重要因素,其次是凝结剂盐浓度,在所有测试的实验条件下,COD降低均高于97.5%。

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